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一种基于斩波技术的热电堆读出电路设计 被引量:2

A Readout Circuit for Thermopile Based on Chopper Technique
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摘要 设计了一款基于斩波技术的热电堆读出电路。读出电路包括前端放大器和2阶1bit量化Sigma-Delta调制器,其中前端放大器采用闭环结构,保证了不同温度下的增益稳定性;此外,在前端放大器和2阶1bit Sigma-Delta调制器中同时引入斩波技术,降低低频噪声和失调电压的影响,实现了较高的检测精度。读出电路采用SMIC 0.18μm 1P6M CMOS工艺实现,测试表明,在电源电压3.3V、1Hz输入信号和3kHz时钟频率下,信噪失真比(SNDR)55.4dB,有效位数(ENOB)达到8.92bit,在-20~85°C温度范围内,可检测约0.2°C的温度变化。 A readout circuit for thermopile is presented in this paper, which includes ampli- fier and 2hal-order 1 bit quantization Sigma-Delta modulator. The amplifier with closed-loop struc- ture ensures the gain stability against the temperature. Moreover, by adopting chopper technique both for the amplifier and 2hal-order 1 bit quantization Sigma-Delta modulator, the low-frequency noise and offset are reduced and high resolution is achieved. The readout is implemented in SMIC 0.18μm 1P6M CMOS process. The measurement results show that in 3.3 V power supply, 1 Hz input frequency and 3 kHz clock frequency, the SNDR is 55.4 dB, ENOB is 8.92 bit, and in the range of --20 to 85 ℃, the detection accuracy is about 0.2 ℃.
出处 《固体电子学研究与进展》 CAS CSCD 北大核心 2013年第4期371-376,共6页 Research & Progress of SSE
基金 国家科技重大专项资助项目(Y1GZ212001) 国家自然科学基金资助项目(61001052)
关键词 热电堆 斩波 放大器 调制器 thermopile chopper amplifier modulator
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参考文献6

  • 1Menolfi C, Huang Q. A low-noise CMOS instru-men- tation amplifier for thermoelectric infrared detectors [J]. IEEE Journal Solid-state Circuits, 1997,32 (7) : 968-976.
  • 2尹韬,杨海钢,刘珂.一种适用于微传感器读出电路的低噪声、低失调斩波放大器[J].Journal of Semiconductors,2007,28(5):796-801. 被引量:18
  • 3陈铖颖,黑勇,胡晓宇.一种适用于传感器信号检测的斩波运算放大器[J].微电子学,2012,42(1):17-20. 被引量:11
  • 4Yves G, Michel S, Willy S. A high-performance multibit △∑ CMOS ADC [J]. IEEE Journal of Solid- state Circuits, 2000,35 (12) : 1829-1840.
  • 5Matthew M, Craig P. A multibit sigma-delta ADC for multimode receivers [J]. IEEE Journal of Solid-state Circuits, 2003,38(3) :475-482.
  • 6Da-Huei L, Tai-Haur K. Advancing data weighted av- eraging technique for multi-Bit sigma-delta modulators [J]. IEEE Transactions on Circuits and Systems, 2007,54(10), 838-842.

二级参考文献15

  • 1尹韬,杨海钢,刘珂.一种适用于微传感器读出电路的低噪声、低失调斩波放大器[J].Journal of Semiconductors,2007,28(5):796-801. 被引量:18
  • 2Nielsen J H, Bruun E. A CMOS low-noise instrumentation amplifier using chopper modulation. Analog Integrated Circuits and Signal Processing ,2005,42:65
  • 3Enz C C, Temes G C. Circuit techniques for reducing the effects of op-amp imperfections: autozeroing, correlated double sampling, and chopper stabilization. Proc IEEE, 1996,84:1584
  • 4Sandulcanu M A T, Nauta B, Wallinga H. Low-power, low-voltage chopped amplifier for noise and offset reduction. Proc ESSCIRC, Southampton, 1997:204
  • 5Laville S, Pontarollo S, Dufaza C, et al. Integrated offset trimming technique. Proc ESSCIRE,2001: 89
  • 6Bakker A, Thiele K, Huijsing J. A CMOS nested-chopper instrumentation amplifier with 100nV offset. IEEE J Solid-State Circuits ,2000,35(12) : 1877
  • 7Hu Y,Sawan M. CMOS front-end amplifier dedicated to monitor very low amplitude signal from implantable sensors. Analog Integrated Circuits and Signal Processing, 2002,33: 29
  • 8Menolfi C, Huang Q. A low-noise CMOS instrumentation amplifier for thermoelectric infrared detectors. IEEE J Solid-State Circuits, 1997,32: 968
  • 9Bakker A, Huijsing J H. Offset reduction in current-mode microsystems. IEEE ISCAS,1996:344
  • 10Enz C C, Vittoz E A, Krummenacher F. A CMOS chopper amplifier. IEEE J Solid-State Circuits, 1987,22(3) : 335

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